Theory and Application of Dynamic Wetting of High Voltage Insulator
暫譯: 高壓絕緣子動態濕潤的理論與應用

Cao, Bin, Wang, Liming

  • 出版商: Wiley
  • 出版日期: 2026-08-31
  • 售價: $4,210
  • 貴賓價: 9.5$3,999
  • 語言: 英文
  • 頁數: 256
  • 裝訂: Hardcover - also called cloth, retail trade, or trade
  • ISBN: 1394385153
  • ISBN-13: 9781394385157
  • 相關分類: 電機學 Electric-machinery
  • 尚未上市,無法訂購

商品描述

Specialized research on high-voltage insulator wetting behavior and contamination flashover

Few books address the wetting characteristics and contamination behavior of high-voltage insulator under varying environmental conditions. Theory and Application of Dynamic Wetting for High Voltage Insulator consolidates a decade of research published in IEEE Transactions and IET Journals into a single authoritative reference. Written by Tsinghua University researchers with extensive IEEE leadership roles, this volume connects fundamental wetting dynamics with practical field applications.

The book examines contamination wetting behavior mechanisms and their impact on insulator performance through on-site examples and engineering applications. Critical findings for ultra-high voltage engineering address contamination flashover prevention, dynamic environmental factors, and power system reliability improvement strategies applicable to modern transmission infrastructure.

Key topics include:

  • Wetting characteristics of high-voltage external insulation with detailed analysis of contamination behavior under varying environmental conditions
  • Performance and application of insulation materials for reliable operation under complex and harsh service conditions
  • Advanced monitoring, assessment, and management approaches for external insulation condition and operational risk
  • Fundamental principles of high-voltage and ultra-high-voltage engineering relevant to modern power transmission systems
  • Impacts of climate variability and extreme environments on insulation performance and corresponding mitigation strategies

For power system engineers, high-voltage equipment researchers, and graduate students in electrical engineering, this reference provides specialized knowledge previously scattered across journal literature. It delivers both theoretical foundations and practical methodologies for addressing external insulation challenges in modern power transmission systems.

商品描述(中文翻譯)

高壓絕緣子濕潤行為與污染閃絡的專門研究

少數書籍探討高壓絕緣子在不同環境條件下的濕潤特性和污染行為。《高壓絕緣子的動態濕潤理論與應用》將十年的研究成果整合成為一本權威參考書,這些研究曾發表於IEEE Transactions和IET Journals。該書由具有豐富IEEE領導經驗的清華大學研究人員撰寫,將基本的濕潤動力學與實際現場應用相連結。

本書通過現場範例和工程應用,探討污染濕潤行為機制及其對絕緣子性能的影響。針對超高壓工程的關鍵發現,提出了防止污染閃絡的策略、動態環境因素以及適用於現代傳輸基礎設施的電力系統可靠性改善策略。

主要主題包括:


  • 高壓外部絕緣的濕潤特性,詳細分析在不同環境條件下的污染行為

  • 在複雜和惡劣服務條件下,絕緣材料的性能和應用以確保可靠運行

  • 針對外部絕緣狀況和操作風險的先進監測、評估和管理方法

  • 與現代電力傳輸系統相關的高壓和超高壓工程的基本原則

  • 氣候變化和極端環境對絕緣性能的影響及相應的緩解策略

對於電力系統工程師、高壓設備研究人員以及電機工程研究生,本參考書提供了先前散見於期刊文獻中的專門知識。它提供了理論基礎和實用方法論,以應對現代電力傳輸系統中的外部絕緣挑戰。

作者簡介

Bin Cao, PhD, is an Assistant Professor at the Institute of Advanced Technologies in Energy and Electrical Engineering at Tsinghua University, China. He has published 79 peer-reviewed journal papers and received the 2024 Geneva Invention Exhibition Gold Award. Dr. Cao is an active member of CIGRE NGN, the Chinese Insulator Standardization Technical Committee, and the IEEE PES High Voltage Surface Discharge Technical Committee.

Liming Wang, PhD, is the Director of the Institute of Advanced Technologies in Energy and Electrical Engineering and a full professor at Tsinghua University, China. He has authored over 760 peer-reviewed papers, including 104 in IEEE Transactions journals, and holds 128 patents. Professor Wang serves as Chair of the IEEE DEIS Technical Committee on Discharges in Gas at UHV, Vice Chair of the China Electric Power Insulator Standardization Committee and was the recipient of the 2024 IEEE DEIS Caixin Sun and Stan Gryzbowski Lifetime Achievement Award.

作者簡介(中文翻譯)

曹斌博士是中國清華大學能源與電氣工程高級技術研究所的助理教授。他已發表79篇經過同行評審的期刊論文,並獲得2024年日內瓦發明展金獎。曹博士是CIGRE NGN、中國絕緣子標準化技術委員會及IEEE PES高壓表面放電技術委員會的活躍成員。

王黎明博士是中國清華大學能源與電氣工程高級技術研究所的所長及正教授。他已發表超過760篇經過同行評審的論文,其中104篇發表在IEEE Transactions期刊,並擁有128項專利。王教授擔任IEEE DEIS氣體超高壓放電技術委員會主席、中國電力絕緣子標準化委員會副主席,並獲得2024年IEEE DEIS蔡新和Stan Gryzbowski終身成就獎。